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    Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/10259/11978

    Título
    Atmosphere-controlled thermal processing enables tunable optical properties via iron-oxide phase engineering in natural silicate materials
    Autor
    Urbaneja Miguel, Álvaro
    Torija López, Alba
    Carrancho Alonso, ÁngelAutoridad UBU Orcid
    Iriarte Avilés, EnekoAutoridad UBU Orcid
    González Moreno, SaraAutoridad UBU Orcid
    González Martín, José ManuelAutoridad UBU Orcid
    Trigo López, MiriamAutoridad UBU Orcid
    Vallejos Calzada, SaúlAutoridad UBU Orcid
    Publicado en
    Journal of Materials Research and Technology. 2026, V. 42, p. 10750-10759
    Editorial
    Elsevier
    Fecha de publicación
    2026-05-29
    ISSN
    2238-7854
    DOI
    10.1016/j.jmrt.2026.05.175
    Resumo
    Controlled-atmosphere thermal processing was investigated as a method to engineer iron-oxide phase assemblages in iron-bearing silicate materials. Natural sandstone was heated between 200 and 1000 °C under air, N2 and CO2 atmospheres to evaluate how oxygen partial pressure governs redox transformations and the resulting macroscopic optical behaviour. The treatments produced a wide and reproducible range of optical responses from a single starting material. Colour evolution, quantified in the CIELAB space, correlates with bulk mineral transformations. Oxidizing conditions stabilize hematite-dominated assemblages and generate red hues, whereas reduced-oxygen atmospheres promote magnetite formation and progressive darkening. Rock-magnetic measurements identify atmosphere-dependent phase assemblages, including a high-coercivity iron oxide under strongly oxidizing conditions. The magnetic response mirrors the optical evolution, indicating that colour development originates from internal phase transformations. Compressive strength remained within the same order of magnitude as the untreated material across the studied conditions, indicating no catastrophic mechanical degradation. These results show that oxygen availability acts as a key processing variable controlling iron-oxide stability and optical response. The study establishes a process-based approach for tuning optical properties in mineral materials through atmosphere-controlled thermal processing without chemical additives. Unlike previous studies focused on temperature-driven effects or isolated observations, this work demonstrates a reproducible process-based approach to tune optical properties in natural silicate materials through controlled atmosphere engineering.
    Palabras clave
    Iron-oxide phase equilibria
    Redox-controlled thermal processing
    Process–structure–property relationship
    Magnetite–hematite transformation
    Atmosphere-controlled heat treatment
    Functional optical materials
    Materia
    Ciencia de materiales
    Materials science
    Mineralogía
    Mineralogy
    URI
    https://hdl.handle.net/10259/11978
    Versión del editor
    https://doi.org/10.1016/j.jmrt.2026.05.175
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    Atribución 4.0 Internacional
    Documento(s) sujeto(s) a una licencia Creative Commons Atribución 4.0 Internacional
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    Urbaneja-jmrt_2026.pdf
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